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1.
黄河源区径流对气候变化的响应及敏感性分析(英文)   总被引:4,自引:1,他引:3  
Response of the runoff in the headwater region of the Yellow River to climate change and its sensibility are analyzed based on the measured data at the four hydrological stations and ten weather stations during the period 1959–2008. The result indicates that change of temperature in the region has an obvious corresponding relationship with global warming and the changes of annual average temperature in each subregion in the region have been presenting a fluctuant and rising state in the past 50 years. However the change of precipitation is more intricate than the change of temperature in the region because of the influences of the different geographical positions and environments in various areas, and the change of annual precipitation in the main runoff-producing area has been presenting a fluctuant and decreasing state in the past 50 years. And there is a remarkable nonlinear correlativity between runoff and precipitation and temperature in the region. The runoff in the region has been decreasing continuously since 1990 because the precipitation in the main runoff-producing area obviously decreases and the annual average temperature continuously rises. As a whole, the runoff in each subregion of the headwater region of the Yellow River is quite sensitive to precipitation change, while the runoff in the subregion above Jimai is more sensitive to temperature change than that in the others in the region, correspondingly.  相似文献   

2.
三江源地区气候变化及其对径流的驱动分析(英文)   总被引:6,自引:3,他引:3  
Based on the precipitation and temperature data of the 12 meteorological stations in the "Three-River Headwaters" region and the observed runoff data of Zhimenda in the headwater sub-region of the Yangtze River, Tangnaihai in the headwater sub-region of the Yellow River and Changdu in the headwater sub-region of the Lancang River during the period 1965-2004, this paper analyses the trends of precipitation, temperature, runoff depth and carries out significance tests by means of Mann-Kendall-Sneyers sequential trend test. Makkink model is applied to calculate the potential evaporation. The runoff model driven by precipitation and potential evaporation is developed and the influence on runoff by climate change is simulated under different scenarios. Results show that during the period 1965-2004 the temperature of the "Three-River Headwaters" region is increasing, the runoff of the three hydrological stations is decreasing and both of them had abrupt changes in 1994, while no significant trend changes happen to the precipitation. The runoff model suggests that the precipitation has a positive effect on the runoff depth, while the potential evaporation plays a negative role. The influence of the potential evaporation on the runoff depth of the Lancang River is found to be the significant in the three rivers; and that of the Yellow River is the least. The result of the scenarios analysis indicates that although the precipitation and the potential evaporation have positive and negative effects on runoff relatively, fluctuated characteristics of individual effect on the runoff depth in specific situations are represented.  相似文献   

3.
The change characteristics and trends of the regional climate in the source region of the Yellow River, and the response of runoff to climate change, are analyzed based on observational data of air temperature, precipitation, and runoff at 10 main hydrological and weather stations in the region. Our results show that a strong signal of climate shift from warm-dry to warm-humid in the western parts of northwestern China (Xinjiang) and the western Hexi Corridor of Gansu Province occurred in the late 1980s, and a same signal of climate change occurred in the mid-2000s in the source region of the Yellow River located in the eastern part of northwestern China. This climate changeover has led to a rapid increase in rainfall and stream runoff in the latter region. In most of the years since 2004 the average annual precipitation in the source region of the Yellow River has been greater than the long-term average annual value, and after 2007 the runoff measured at all of the hydrologic sections on the main channel of the Yellow River in the source region has also consistently exceeded the long-term average annual because of rainfall increase. It is difficult to determine the prospects of future climate change until additional observations and research are conducted on the rate and temporal and spatial extents of climate change in the region. Nevertheless, we predict that the climate shift from warm-dry to warm-humid in the source region of the Yellow River is very likely to be in the decadal time scale, which means a warming and rainy climate in the source region of the Yellow River will continue in the coming decades.  相似文献   

4.
黄河入海径流变化及影响因素   总被引:1,自引:1,他引:0  
孔岩  王红  任立良 《地理研究》2012,31(11):1981-1990
黄河入海径流是黄河水循环的重要分量,涉及整个流域,它的变化是流域气候与人类活动的综合体现。以黄河入海口利津水文站1963~2009年实测径流量年均值为基础,采用随机水文学方法,对入海径流动态变化进行了分析;结合流域内7个径流来源区的78个气象站同时段月均降水和气温数据及流域内取水量和水利工程等资料,探讨了不同径流来源区的气候因素和人类活动对入海径流量的影响。结果表明:近50年来入海实测径流量呈显着下降趋势,且存在1968年、1985年、1996年与2002年这四个突变点;入海天然径流量同样呈显着下降趋势,只有1985年一个突变点。唐乃亥以上区间的降水量、兰州至龙门区间的气温以及龙门至三门峡区间的降水和气温是引起入海天然径流量变化主要因素;气温因素的季节性变化对入海天然径流量也有影响,其中夏季降水与冬季气温是重要的因素。自20世纪70年代以来,人类活动对入海径流量的影响不断加强,且在耗水量、水土保持及水利工程等方面表现出明显的空间差异。取水量、降水、气温对黄河入海实测径流量变化的贡献率分别为42.2%、39.2%、18.6%.  相似文献   

5.
三江源气候变化及其对径流的驱动分析   总被引:14,自引:3,他引:11  
以1965-2004 年三江源地区12 个气象台站的降水和气温资料以及长江源区直门达、黄河源区唐乃亥和澜沧江源区昌都水文站的径流资料为基础,分析三江源地区的降水、气温和径流的变化趋势,并采用Mann-Kendall-Sneyers 方法进行趋势显著性检验;采用Makkink 公式计算三江源区12 个气象站点的潜在蒸发,建立三江源区降水和潜在蒸发对径流的驱动模型,并对气候变化(降水和气温的变化) 对径流的驱动进行情景分析。研究表明:1965-2004 年三江源区气温升高,径流减少,并且气温和径流都在1994 年发生突变,但降水的变化趋势不明显。降水和潜在蒸发对径流深的驱动模型表明三江源区降水对径流起正向的驱动作用,潜在蒸发对径流起负向的驱动作用,具体来说,澜沧江源区潜在蒸发对径流的驱动力最大,长江源区次之,黄河源区最小。借助驱动模型对三江源气候变化(降水和气温的变化) 对径流的影响进行情景分析,结果显示,降水和气温对径流的驱动在总体上虽然分别是正、负方向上的驱动,但在具体情景下其各自的驱动作用又呈现出波动的特征。  相似文献   

6.
为探究黄河上游径流量与降水量变化特征,基于唐乃亥、下河沿、头道拐3个水文站近60 a的降水量、径流量资料,采用线性倾向趋势检验、Mann-Kendall检验法(M-K趋势检验)、Spearman秩次相关检验、M-K突变检验、Pettitt非参数检验、有序聚类分析、累积距平法、双累积曲线等分析方法对比研究了黄河上游及上游不同子区域降水量和径流量的变化特征,并讨论了径流量对降水量的响应关系。结果表明:黄河上游降水量呈不显著增加趋势,在2003年发生突变,突变前后变化率为4.67%;径流量呈显著减少趋势,突变年份为1986年,突变前后变化率为35.34%。3个子区域年降水量变化趋势分别呈显著增加、不显著增加和显著减少趋势,径流量均呈减少趋势。以唐乃亥以上的Ⅰ区为基准区时,唐乃亥—下河沿所在的Ⅱ区降水量因素对径流量的影响达到25.08%,非降水量因素为74.92%,而下河沿—头道拐的Ⅲ区,降水量对径流量的影响为32.14%,非降水量因素为67.86%。研究结果对黄河流域水资源综合管理与科学配置具有参考意义。  相似文献   

7.
黄河流域水资源演化模式分析   总被引:16,自引:0,他引:16  
郑红星  刘昌明 《地理学报》2004,59(2):267-273
应用EMD-Hilbert变换方法分析花园口以上降水和天然径流近50年的资料系列。结果表明:黄河流域降水演化模式可由4个内在模函数以及一个单调递减的趋势项表示,而天然径流的演化则由3个基本模态和一个单调递减的趋势组成。黄河流域降水和天然径流的演化模式存在一定的相关关系,但两者之间并非一一对应的关系。从时间上看,不论是内在模函数还是趋势项,相对于降水,天然径流都表现出滞后的特点,一定程度上反映了下垫面调蓄作用对径流演化过程的影响。此外,从降水和天然径流内在模函数的周期可以推测黄河流域的水资源演化可能与大气低频振荡有关。  相似文献   

8.
In this study,the characteristics and changing trends of temperature,precipitation,and runoff in the upper Yellow River basin up Tangnag station are analyzed by using hydrological and meteorological data in the past 50 years from observation stations in the basin.Further,in this study,the evolving trend of runoff in the future decades is forecasted in the basin based on the method of suppositional climate scenes combination.The results indicate temperature variation in the basin has an evident positive relation with global warming,and the precipitation variations are quite complicated in the basin because of differences of located geographic positions during the past 50 years.Runoff in the basin has been decreasing continually since the end of the 1980s because the mean temperature in the basin has been rising and precipitation in the main areas of runoff formation in the basin has been decreasing.Runoff will largely decrease if precipitation decreases and temperature rises continuously,whereas runoff will increase if temperature is invariable and precipitation increases largely;the increase magnitude of runoff may be more than that of precipitation because of the synchronously increasing supply of meltwater from snow,glacier,and frozen soils in future several decades.  相似文献   

9.
河川径流还现计算是准确反映区域水资源状况的基础,同时也是水资源规划和决策的重要依据.选取甘肃省洮河流域李家村、红旗2个代表水文站长系列径流资料作为基础数据,在还原计算的础上,对洮河流域径流进行还现计算,同时对径流变化特征进行研究.结果 表明:1956—2016年洮河流域李家村、红旗多年平均实测径流量分别为39.52×1...  相似文献   

10.
1933~2012年无定河径流突变与周期特征诊断   总被引:1,自引:1,他引:0  
选取黄河中游区实施水土保持最早的一级支流无定河流域,利用滑动-T、曼-肯德尔和山本等3种突变检测方法相互验证,确定了在受人类活动显著影响下,径流的突变年份为1972年,自此径流平均减少3.55×108m3;基于径流突变前降水与径流的显著相关性,并借助地统计克里格空间插值法,重建1933~2012年无定河流域出口控制水位站天然径流变化序列。采用小波分析法诊断天然径流序列的周期变化,结果显示:天然年径流存在6个不同时间尺度的“丰-枯”演变特征,其平均周期分别对应着35.5、22.2、16.8、12.2、9.3和3.3 a。  相似文献   

11.
近50年黄土高原侵蚀性降水的时空变化特征   总被引:11,自引:1,他引:10  
利用黄土高原及其附近地区99个站点逐日降水观测资料,分析了1956~2005年黄土高原年降水量、侵蚀性降水量、暴雨量的变化趋势和空间特征.研究表明:1956~2005年黄土高原降水在波动中呈现下降趋势,尤其自1980年年以来,降水减少趋势显著.黄土高原地区降水变化具有显著的空间差异,降水偏少最为显著区域位于黄河中游的河口-龙门区间,尤以无定河流域、汾河流域和山西中北部最为典型,年降水量和侵蚀性降水偏少10%以上.存在从北向南沿朔州-离石-临汾-三门峡一带的暴雨异常偏少地带,偏少在20%以上.  相似文献   

12.
黄河上游径流变化特征及其影响因素初步分析   总被引:16,自引:0,他引:16  
利用1956—2005年黄河上游水文和气象台站观测的流量、气温、降水资料,用气候诊断方法分析了该地区径流量的年代际演变特征以及影响因子。结果表明:20世纪50—80年代年平均流量呈波动性的上升趋势,90年代至21世纪的前5年年平均流量呈下降趋势。降水量、蒸发量、气温是影响流域流量的主要气象因子,它们的机理完全不同。枯季、雨季降水量与流量分别呈负、正反馈机制,秋季和冬季降水量对次年春夏季的流量有比较明显的调节作用;4—5月(10月)气温与后期5—6月(11月)流量呈负(正)反馈机制;枯季、雨季地表蒸发与流域的河川流量呈负反馈机制,并且消耗的水资源量呈逐年增加的趋势。20世纪90年代以来黄河上游地区河川流量的减少与降水量减少、地表蒸发量增大有关。  相似文献   

13.
黄河流域上游降水时空结构特征   总被引:23,自引:2,他引:21  
黄河兰州以上区域水资源量占黄河流域水资源的一半以上,研究黄河上游兰州以上区域降水时空结构变化具有重要意义。本文利用黄河兰州以上19个降水站点1959~1998年系列数据,采用EOF技术分析了黄河上游降水的时空结构特征与变化。结果表明:黄河上游兰州以上区域降水存在四种典型降水类型,即“全部一致型”、“南北型”、“东西型”和“相间复杂型”。但第一特征向量为主导,其时间变化系数与年降水量基本一致,说明黄河流域兰州以上降水主要受青藏高原大尺度气候影响,具有降水偏多(少)一致性特征。从时间尺度上降水有减少的趋势;并伴随3、6、和11年的周期变化,而且在1986和1991年发生突变。  相似文献   

14.
全球气候变化对黄河流域天然径流量影响的情景分析   总被引:29,自引:6,他引:23  
张光辉 《地理研究》2006,25(2):268-275
本文从干旱指数蒸发率函数出发,以HadCM3 GCM对降水和温度的模拟结果为基础,在IPCC不同发展情景下,分析了未来近100年内黄河流域天然径流量的变化趋势。研究结果表明,在不同气候变化情景下,多年平均年径流量的变化随着区域的不同而有显著差异,其变化幅度在-48.0%203.0%之间。全球气候变化引起的多年平均天然径流量的变化从东向西逐渐减小。就黄河流域而言,20062035年、20362065年、20662095年A2情景下(人口快速增长、经济发展缓慢)多年平均天然径流量的变化量分别为5.0%、11.7%、8.1%,B2情景下(强调社会技术创新)相应的变化分别为7.2%、-3.1%、2.6%。  相似文献   

15.
The mountain watersheds of Kaidu River and Urumqi River, which separately originate from the south and north-side of the Tianshan Mountains in Xinjiang, are selected as the study area. The characteristics and trends on variation of temperature, precipitation and runoff, and the correlativity between temperature, precipitation, and runoff were analyzed based on the past 40 years of observational data from the correlative hydrological and weather stations in the study areas. Various weather scene combinations are assumed and the response models of runoff to climate change are established in order to evaluate the sensitivity of runoff to climate change in the study areas based on the foregoing analysis. Results show that all variations of temperature, precipitation, and runoff overall present an oscillating and increasing trend since the 1960s and this increase are quite evident after 1990. There is a markedly positive correlation between mountain runoff, temperature, and precipitation while there are obvious regional differences of responding degree to precipitation and temperature between mountain runoff of Urumqi River and Kaidu River Basins. Also, mountain runoff of Urumqi River Basin is more sensitive to precipitation change than that of Kaidu River Basin, and mountain runoff of Kaidu River Basin is more sensitive to temperature change than that of Urumqi River Basin.  相似文献   

16.
近50 a来黄河上游水循环要素变化分析   总被引:5,自引:6,他引:5  
 根据水文、气象台站观测资料,分析了黄河上游有器测资料几十年来降水、温度、径流等水循环素的变化过程与特征。结果显示,温度近几十年来流域各个地方有着不同程度的上升,与全球变暖有着明显的对应关系;而随着气温的上升,蒸发和下渗呈增加的趋势。降水变化的区域性特征十分明显,降水量的增减随地理位置不同而差异较大。受主要产流区域降水减少,气温上升的影响,黄河上游产水量呈持续递减的态势。在上述分析基础上,利用全球气候模式(GCMs)与统计模式对未来流域降水和径流的可能变化进行了预测。结果表明,未来30 a里,随着温度将进一步上升,降水量将比目前有明显增加,黄河上游的径流量将随降水量的增加而进入一个相对丰水的时期。  相似文献   

17.
黄河中游多沙粗沙区水沙变化趋势及其主控因素的贡献率   总被引:5,自引:0,他引:5  
随着气候变化和人类活动影响加剧,黄河中游多沙粗沙区的水沙变化剧烈,因此研究影响黄河中游多沙粗沙区径流量和输沙量的驱动因素对预测未来水沙变化具有重要意义。本文选取Mann-Kendall趋势检验法,Pettitt突变点检验法,位置、尺度、形状的广义可加模型以及累积量斜率变化率比较法对黄河中游多沙粗沙区15个水文站控制流域1956-2010年的年降水量、年径流量以及年输沙量变化特征及其贡献率进行分析,确定影响黄河中游多沙粗沙区径流量和输沙量变化的主要原因。结果表明:① Mann-Kendall趋势检验在5%的显著性水平下,表明降水量虽呈减少趋势但并不显著,径流量和输沙量则有显著的减少趋势;② Pettitt突变点检验得出所研究区域径流量和输沙量的突变年份在1972年、1985年以及1996年左右;③ GAMLSS模型分析结果同样表明降水的均值不随时间发生变化,但降水的方差有减小的趋势;④ 通过累积量斜率变化率比较法得出,人类活动对窟野河流域径流输沙的影响大于无定河流域。通过分析黄河中游多沙粗沙区径流量和输沙量变化的原因,可为黄河中游多沙粗沙区水资源合理分配提供一定的理论支持。  相似文献   

18.
长江黄河源区高寒植被变化的NDVI记录   总被引:55,自引:0,他引:55  
使用8 km分辨率Pathdfinder NOAA-AVHRR/NDVI时间序列数据, 对青藏高原长江、黄河源区1982~2001年地表植被覆盖的空间分布和时间序列变化进行了分析, 并在典型区NDVI与气温、降水量和浅层地温单相关关系分析的基础上, 在不考虑地温作用和考虑地温作用两种条件下, 构建了NDVI与气温、降水量和浅层地温的统计模型。结果表明:近20年来江河源区的植被覆盖总体上保持原状, 局部继续退化。黄河源区的扎陵湖、鄂陵湖周边及其北东部地区、巴颜喀拉山北麓的多曲源头地区、长江源区的曲麻莱和治多一带、托托河沿至伍道梁之间的青藏公路两侧一定范围、格拉丹冬局部地区年NDVI减少显著, 幅度在0%~20%之间, 植被退化严重。江河源区年NDVI的变化, 即植被覆盖状况的好坏主要受温度, 尤其是40 cm附近地温的影响, NDVI对40 cm的地温变化极为敏感。在江河源多年冻土区, 冻土冻融过程不仅与地温变化息息相关, 而且影响土壤含水量的多少, 冻土的退化将会直接影响该区植被的生长。  相似文献   

19.
黄河流域近50年降水变化趋势分析   总被引:100,自引:5,他引:95  
徐宗学  张楠 《地理研究》2006,25(1):27-34
本文简要分析了黄河流域降水空间分布规律,用非参数检验方法(Mann-Kendall法)对流域内77个气象站近50年的降水资料进行了年月降水序列趋势检验,并用线性回归方法与其进行了比较。结果表明,对于年降水序列,有65个气象台站呈现下降趋势,典型月(包括1月、4月、7月、10月)中4月、7月和10月对年降水下降趋势贡献较大,但其趋势空间分布情况存在差异。对于所有月降水序列,全年45月以及712月降水呈现下降趋势。而其趋势空间分布,黄河上游北纬35°以南地区除79月外其余月份降水呈现增长趋势。渭河上游及呼和浩特地区降水趋势随月份时有变化,流域内其他地区降水则呈减少趋势。对比两种方法,Mann-Kendall方法在冬季(12月至次年2月)的检验结果中无变化趋势气象站数明显多于线性回归方法,且后者估计出的趋势变化幅度略大于Mann-Kendall方法所估计出的结果。  相似文献   

20.
江河源区NDVI时空变化及其与气候因子的关系(英文)   总被引:5,自引:3,他引:2  
The source regions of the Yangtze and Yellow rivers are important water conservation areas of China. In recent years, ecological deterioration trend of the source regions caused by global climate change and unreasonable resource development increased gradually. In this paper, the spatial distribution and dynamic change of vegetation cover in the source regions of the Yangtze and Yellow rivers are analyzed in recent 10 years based on 1-km resolution multitemporal SPOTVGT-DN data from 1998 to 2007. Meanwhile, the correlation relationships between air temperature, precipitation, shallow ground temperature and NDVI, which is 3×3 pixel at the center of Wudaoliang, Tuotuohe, Qumalai, Maduo, and Dari meteorological stations were analyzed. The results show that the NDVI values in these two source regions are increasing in recent 10 years. Spatial distribution of NDVI which was consistent with hydrothermal condition decreased from southeast to northwest of the source regions. NDVI with a value over 0.54 was mainly distributed in the southeastern source region of the Yellow River, and most NDVI values in the northwestern source region of the Yangtze River were less than 0.22. Spatial changing trend of NDVI has great difference and most parts in the source regions of the Yangtze and Yellow rivers witnessed indistinct change. The regions with marked increasing trend were mainly distributed on the south side of the Tongtian River, some part of Keqianqu, Tongtian, Chumaer, and Tuotuo rivers in the source region of the Yangtze River and Xingsuhai, and southern Dari county in the source region of the Yellow River. The regions with very marked increasing tendency were mainly distributed on the south side of Tongtian Rriver and sporadically distributed in hinterland of the source region of the Yangtze River. The north side of Tangula Range in the source region of the Yangtze River and Dari and Maduo counties in the source region of the Yellow River were areas in which NDVI changed with marked decreasing tendency. The NDVI change was980 Journal of Geographical Sciences positively correlated with average temperature, precipitation and shallow ground temperature. Shallow ground temperature had the greatest effect on NDVI change, and the second greatest factor influencing NDVI was average temperature. The correlation between NDVI and shallow ground temperature in the source regions of the Yangtze and Yellow rivers increased significantly with the depth of soil layer.  相似文献   

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